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Benzenemethanethiol, 4-(1-methylethyl)-, also known as 4-isopropyltoluene-2-thiol or 4-isopropyltoluene-2-thiol, is an organic compound with the chemical formula C10H14S. It is a colorless to pale yellow liquid with a strong, pungent odor. Benzenemethanethiol, 4-(1-methylethyl)- is primarily used as a synthetic intermediate in the production of various chemicals, including pharmaceuticals, agrochemicals, and fragrances. It is also employed as a flavoring agent in the food and beverage industry. Due to its reactive nature, it is essential to handle Benzenemethanethiol, 4-(1-methylethyl)- with care, as it can cause skin and eye irritation, as well as respiratory issues upon inhalation.

4427-53-6

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4427-53-6 Usage

Properties

Organosulfur compound, strong unpleasant odor

Uses

Flavoring agent in food and beverages, production of fragrances and perfumes, intermediate in synthesis of pharmaceuticals and other organic compounds

Reactivity

Highly reactive compound; handle with care

Check Digit Verification of cas no

The CAS Registry Mumber 4427-53-6 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 4,4,2 and 7 respectively; the second part has 2 digits, 5 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 4427-53:
(6*4)+(5*4)+(4*2)+(3*7)+(2*5)+(1*3)=86
86 % 10 = 6
So 4427-53-6 is a valid CAS Registry Number.

4427-53-6Upstream product

4427-53-6Downstream Products

4427-53-6Relevant academic research and scientific papers

Structure-Odor Activity Studies on Monoterpenoid Mercaptans Synthesized by Changing the Structural Motifs of the Key Food Odorant 1-p-Menthene-8-thiol

Schoenauer, Sebastian,Schieberle, Peter

, p. 3849 - 3861 (2016/06/01)

1-p-Menthene-8-thiol (1) has been discovered as the key odorant in grapefruit juice several decades ago and contributes to the overall odor of the fruit with an extremely low odor threshold of 0.000034 ng/L in air. This value is among the lowest odor thresholds ever reported for a food odorant. To check whether modifications in the structure of 1 would lead to changes in odor threshold and odor quality, 34 mercapto-containing p-menthane and 1-p-menthene derivatives as well as several aromatic and open-chain mercapto monoterpenoids were synthesized. Eighteen of them are reported for the first time in the literature, and their odor thresholds and odor qualities as well as analytical data are supplied. A comparison of the sensory data with those of 1 showed that hydrogenation of the double bond led to a clear increase in the odor threshold. Furthermore, moving the mercapto group into the ring always resulted in higher odor thresholds compared to thiols with a mercapto group in the side chains. Although all tertiary thiols always exhibited low odor thresholds, none of the 31 compounds reached the extremely low threshold of 1. Also, none of the synthesized mercapto monoterpenoids showed a similar odor quality resembling grapefruit. Although the saturated and aromatic analogues exhibited similar scents as 1, the aromas of the majority of the other compounds were described as sulfury, rubber-like, burned, soapy, or even mushroom-like. NMR and MS data as well as retention indices of the 23 newly reported sulfur-containing compounds might aid in future research to identify terpene-derived mercaptans possibly present in trace levels in foods.

Structure-activity relationships in the binding of chemically derivatized CD4 to gp120 from human immunodeficiency virus

Xie, Hui,Ng, Danny,Savinov, Sergey N.,Dey, Barna,Kwong, Peter D.,Wyatt, Richard,Smith III, Amos B.,Hendrickson, Wayne A.

, p. 4898 - 4908 (2008/03/11)

The first step in HIV infection is the binding of the envelope glycoprotein gp120 to the host cell receptor CD4. An interfacial "Phe43 cavity" in gp120, adjacent to residue Phe43 of gp120-bound CD4, has been suggested as a potential target for therapeutic intervention. We designed a CD4 mutant (D1D2F43C) for site-specific coupling of compounds for screening against the cavity. Altogether, 81 cysteine-reactive compounds were designed, synthesized, and tested. Eight derivatives exceeded the affinity of native D1D2 for gp120. Structure-activity relationships (SAR) for derivatized CD4 binding to gp120 revealed significant plasticity of the Phe43 cavity and a narrow entrance. The primary contacts for compound recognition inside the cavity were found to be van der Waals interactions, whereas hydrophilic interactions were detected in the entrance. This first SAR on ligand binding to an interior cavity of gp120 may provide a starting point for structure-based assembly of small molecules targeting gp120-CD4 interaction.

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